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zadetkov: 42
1.
  • Intracellular pathways invo... Intracellular pathways involved in cell survival are deregulated in mouse and human spinal muscular atrophy motoneurons
    Sansa, Alba; de la Fuente, Sandra; Comella, Joan X. ... Neurobiology of disease, July 2021, 2021-07-00, 20210701, 2021-07-01, Letnik: 155
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    Spinal Muscular Atrophy (SMA) is a severe neuromuscular disorder caused by loss of the Survival Motor Neuron 1 gene (SMN1). Due to this depletion of the survival motor neuron (SMN) protein, the ...
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2.
  • Calpain system is altered i... Calpain system is altered in survival motor neuron-reduced cells from in vitro and in vivo spinal muscular atrophy models
    de la Fuente, Sandra; Sansa, Alba; Hidalgo, Iván ... Cell death & disease, 06/2020, Letnik: 11, Številka: 6
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    Spinal muscular atrophy (SMA) is a severe neuromuscular disorder caused by loss of the survival motor neuron 1 (SMN1) gene. SMA is characterized by the degeneration of spinal cord motoneurons (MNs), ...
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3.
  • Inhibition of autophagy del... Inhibition of autophagy delays motoneuron degeneration and extends lifespan in a mouse model of spinal muscular atrophy
    Piras, Antonio; Schiaffino, Lorenzo; Boido, Marina ... Cell death & disease, 12/2017, Letnik: 8, Številka: 12
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    Spinal muscular atrophy (SMA) is a recessive autosomal neuromuscular disease, due to homozygous mutations or deletions in the telomeric survival motoneuron gene 1 (SMN1). SMA is characterized by ...
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4.
  • Sp1-regulated expression of... Sp1-regulated expression of p11 contributes to motor neuron degeneration by membrane insertion of TASK1
    García-Morales, Victoria; Rodríguez-Bey, Guillermo; Gómez-Pérez, Laura ... Nature communications, 08/2019, Letnik: 10, Številka: 1
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    Disruption in membrane excitability contributes to malfunction and differential vulnerability of specific neuronal subpopulations in a number of neurological diseases. The adaptor protein p11, and ...
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5.
  • Survival motor neuron prote... Survival motor neuron protein and neurite degeneration are regulated by Gemin3 in spinal muscular atrophy motoneurons
    Miralles, Maria P; Sansa, Alba; Beltran, Maria ... Frontiers in cellular neuroscience, 12/2022, Letnik: 16
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    Spinal Muscular Atrophy (SMA) is a genetic neuromuscular disorder caused by reduction of the ubiquitously expressed protein Survival Motor Neuron (SMN). Low levels of SMN impact on spinal cord ...
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6.
  • Spinal Muscular Atrophy aut... Spinal Muscular Atrophy autophagy profile is tissue-dependent: differential regulation between muscle and motoneurons
    Sansa, Alba; Hidalgo, Ivan; Miralles, Maria P ... Acta neuropathologica communications, 07/2021, Letnik: 9, Številka: 1
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    Spinal muscular atrophy (SMA) is a neuromuscular genetic disease caused by reduced survival motor neuron (SMN) protein. SMN is ubiquitous and deficient levels cause spinal cord motoneurons (MNs) ...
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7.
  • Smn-Deficiency Increases th... Smn-Deficiency Increases the Intrinsic Excitability of Motoneurons
    Arumugam, Saravanan; Garcera, Ana; Soler, Rosa M ... Frontiers in cellular neuroscience, 09/2017, Letnik: 11
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    During development, motoneurons experience significant changes in their size and in the number and strength of connections that they receive, which requires adaptive changes in their passive and ...
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8.
  • ERK MAPK signaling pathway ... ERK MAPK signaling pathway inhibition as a potential target to prevent autophagy alterations in Spinal Muscular Atrophy motoneurons
    Sansa, Alba; Miralles, Maria P; Beltran, Maria ... Cell death discovery, 04/2023, Letnik: 9, Številka: 1
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    Spinal Muscular Atrophy (SMA) is a severe genetic neuromuscular disorder that occurs in childhood and is caused by misexpression of the survival motor neuron (SMN) protein. SMN reduction induces ...
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9.
  • Saccharomyces cerevisiae ce... Saccharomyces cerevisiae cells have three Omega class glutathione S-transferases acting as 1-Cys thiol transferases
    Garcerá, Ana; Barreto, Lina; Piedrafita, Lidia ... Biochemical journal, 09/2006, Letnik: 398, Številka: 2
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    The Saccharomyces cerevisiae genome encodes three proteins that display similarities with human GSTOs (Omega class glutathione S-transferases) hGSTO1-1 and hGSTO2-2. The three yeast proteins have ...
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10.
  • A new model to study spinal... A new model to study spinal muscular atrophy: Neurite degeneration and cell death is counteracted by BCL-XL Overexpression in motoneurons
    Garcera, Ana; Mincheva, Stefka; Gou-Fabregas, Myriam ... Neurobiology of disease, 06/2011, Letnik: 42, Številka: 3
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    Abstract Spinal muscular atrophy (SMA) is a motoneuron disorder characterized by deletions or specific mutations in the Survival Motor Neuron gene ( SMN ). SMN is ubiquitously expressed and has a ...
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zadetkov: 42

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